海西定
铁转运蛋白
贫血
缺铁
缺铁性贫血
氧化应激
氧化铁纳米粒子
生物利用度
铁稳态
炎症
毒性
铁补充剂
生理学
免疫学
化学
医学
生物化学
生物
内科学
药理学
氧化铁
新陈代谢
有机化学
作者
Rafał Mazgaj,Paweł Lipiński,Mateusz Szudzik,Aneta Jończy,Z Kopeć,Adrian Stankiewicz,M. Kamyczek,Dorine W. Swinkels,Beata Żelazowska,Rafał R. Starzyński
摘要
Iron deficiency is the most common mammalian nutritional disorder. However, among mammalian species iron deficiency anemia (IDA), occurs regularly only in pigs. To cure IDA, piglets are routinely injected with high amounts of iron dextran (FeDex), which can lead to perturbations in iron homeostasis. Here, we evaluate the therapeutic efficacy of non-invasive supplementation with Sucrosomial iron (SI), a highly bioavailable iron supplement preventing IDA in humans and mice and various iron oxide nanoparticles (IONPs). Analysis of red blood cell indices and plasma iron parameters shows that not all iron preparations used in the study efficiently counteracted IDA comparable to FeDex-based supplementation. We found no signs of iron toxicity of any tested iron compounds, as evaluated based on the measurement of several toxicological markers that could indicate the occurrence of oxidative stress or inflammation. Neither SI nor IONPs increased hepcidin expression with alterations in ferroportin (FPN) protein level. Finally, the analysis of the piglet gut microbiota indicates the individual pattern of bacterial diversity across taxonomic levels, independent of the type of supplementation. In light of our results, SI but not IONPs used in the experiment emerges as a promising nutritional iron supplement, with a high potential to correct IDA in piglets.
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